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首页> 外文期刊>Journal of Fluid Mechanics >Hydrodynamic and thermodiffusive instability effects on the evolution of laminar planar lean premixed hydrogen flames
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Hydrodynamic and thermodiffusive instability effects on the evolution of laminar planar lean premixed hydrogen flames

机译:层流平面稀薄预混氢火焰演化的流体动力学和热扩散不稳定性影响

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摘要

Numerical simulations with single-step chemistry and detailed transport are used to study premixed hydrogen/air flames in two-dimensional channel-like domains with periodic boundary conditions along the horizontal boundaries as a function of the domain height. Both unity Lewis number, where only hydrodynamic instability appears, and subunity Lewis number, where the flame propagation is strongly affected by the combined effect of hydrodynamic and thermodiffusive instabilities are considered. The simulations aim at studying the initial linear growth of perturbations superimposed on the planar flame front as well as the long-term nonlinear evolution. The dispersion relation between the growth rate and the wavelength of the perturbation characterizing the linear regime is extracted from the simulations and compared with linear stability theory. The dynamics observed during the nonlinear evolution depend strongly on the domain size and on the Lewis number. As predicted by the theory, unity Lewis number flames are found to form a single cusp structure which propagates unchanged with constant speed. The long-term dynamics of the subunity Lewis number flames include steady cell propagation, lateral flame movement, oscillations and regular as well as chaotic cell splitting and merging.
机译:使用单步化学和详细传输的数值模拟来研究二维通道状畴中的预混合氢/空气火焰,其沿水平边界的周期性边界条件是畴高度的函数。考虑了只有水动力不稳定性出现的统一的路易斯数和由水动力不稳定性和热扩散不稳定性共同作用强烈影响火焰传播的亚单位路易斯数。该模拟旨在研究扰动的初始线性增长与平面火焰前沿的叠加以及长期非线性演化。从仿真中提取了增长率和微扰波长之间的色散关系,该线性关系表征了线性状态,并与线性稳定性理论进行了比较。在非线性演化过程中观察到的动力学在很大程度上取决于畴的大小和路易斯数。如理论所预言的,发现统一的路易斯数火焰形成单一的尖端结构,该尖端结构不变地以恒定速度传播。亚单位路易斯数火焰的长期动力学包括稳定的细胞传播,横向火焰运动,振荡,规则的以及混乱的细胞分裂和融合。

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